首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Evidence for alternative binding modes in the interaction of benzylamine analogues with bovine liver monoamine oxidase B
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Evidence for alternative binding modes in the interaction of benzylamine analogues with bovine liver monoamine oxidase B

机译:苄胺类似物与牛肝单胺氧化酶B相互作用中其他结合方式的证据

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The interaction of purified bovine liver MAO B with the benzylamine analogues N,N-dimethylbenzylamine and α-methylbenzylamine has been investigated. Both classes of analogues are competitive inhibitors of benzylamine oxidase activity. The K_i values were determined for nine different para-substituted N,N-dimethylbenzylamine analogues. Analysis of the binding affinities demonstrate the deprotonated forms of the tertiary amines are preferentially bound to MAO B and the affinity decreases with increasing van der Waals volume of the para-substituent. The correlation for this relation is: Log K_i = -0.97±(0.28)σ + (0.75±0.11)(0.1 * V_w) - 4.24±(0.16) α-Methyl benzylamine analogues are also found to be competitive inhibitors of MAO B-catalyzed benzylamine oxidation. Similar K_i values were determined using either the S or R stereoisomers. Analysis of the binding affinities of five para-substituted α-methylbenzylamine analogues of MAO B shows the deprotonated form also to be preferentially bound and the affinity is marginally increased with increasing van der Waals volume of the para-substituent: Log K_i = -0.71σ - (0.32)(0.1 * V_w) - 3.50 Comparison of these data with that previously published for para-substituted benzylamine binding to MAO B (Walker and Edmondson, Biochemistry 33 (1997) 7088-7098) demonstrates that these benzylamine analogues exhibit differing modes of binding to the active site of MAO B. The presence of an electronic substituent effect in the binding of these two classes of analogues compared with the lack of an observable electronic effect in the binding of benzylamine to MAO B is consistent with the proposal that orientation of the benzyl ring of the bound substrate is responsible for the absence of an electronic substituent effect on the rate of the reductive half reaction (Miller and Edmondson, Biochemistry 38 (1999) 13670-13683).
机译:已经研究了纯化的牛肝MAOB与苄胺类似物N,N-二甲基苄胺和α-甲基苄胺的相互作用。这两类类似物都是苄胺氧化酶活性的竞争性抑制剂。对于九种不同的对位取代的N,N-二甲基苄基胺类似物确定了K i值。结合亲和力的分析表明,叔胺的去质子化形式优先与MAO B结合,并且亲和力随对位取代基的范德华体积的增加而降低。该关系的相关性为:Log K_i = -0.97±(0.28)σ+(0.75±0.11)(0.1 * V_w)-4.24±(0.16)α-甲基苄基胺类似物也被发现是MAO B-的竞争性抑制剂。催化苄胺氧化。使用S或R立体异构体可以确定相似的K_i值。对MAO B的五个对位取代的α-甲基苄基胺类似物的结合亲和力的分析表明,去质子化形式也被优先结合,并且亲和力随对位取代基的范德华体积的增加而略有增加:Log K_i =-0.71σ -(0.32)(0.1 * V_w)-3.50与先前发表的对位取代的苄胺与MAO B的结合数据的比较(Walker和Edmondson,生物化学33(1997)7088-7098)表明,这些苄胺类似物表现出不同的模式与苄基胺与MAO B的结合缺乏可观察到的电子效应,与这两类类似物的结合中存在电子取代基效应的现象相一致结合的底物的苄基环的上半数是造成还原半反应速率不存在电子取代基的原因(Miller and Edmondson,Bi Ochemistry 38(1999)13670-13683)。

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